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ADA4891-2ARZ-R7 Datasheet(PDF) 15 Page - Analog Devices |
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ADA4891-2ARZ-R7 Datasheet(HTML) 15 Page - Analog Devices |
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15 / 20 page ![]() ADA4891-1/ADA4891-2 Rev. A | Page 15 of 20 TERMINATING UNUSED AMPLIFIERS An example of a 15 MHz, 3-pole Sallen-Key, low-pass, video reconstruction filter is shown in Figure 51. This circuit features a gain of 2, has a 0.1 dB bandwidth of 7.3 MHz, and over 17 dB attenuation at 29.7 MHz (see Figure 52). The filter has three poles; two are active with a third passive pole (R6 and C4) placed at the output. C3 improves the filter roll-off. R6, R7, and R8 comprise the video load of 150 Ω. Components R6, C4, R7, R8, and the input termination of the network analyzer form a 6 dB attenuator; therefore, the reference level is roughly 0 dB, as shown in Figure 52. Terminating unused amplifiers in a multiamplifier package is an important step to ensuring proper operation of the functional amplifier. Unterminated amplifiers can oscillate and draw excessive power if left unattended. The recommended procedure for terminating unused amplifiers is to connect any unused amplifiers in a unity-gain configuration and connect the noninverting input to midsupply voltage. With symmetrical bipolar power supplies, this means connecting the noninverting input to ground, as shown in Figure 49. In single power supply applications, a synthetic midsupply source must be created. This can be accomplished with a simple resistive voltage divider. Figure 50 shows the proper connection for terminating an unused amplifier in a single-supply configuration. C2 51pF –VS +VS ADA4891-2 Figure 49. Terminating Unused Amplifier with Symmetrical Bipolar Power Supplies 2.5k Ω 2.5k Ω +VS ADA4891-2 Figure 50. Terminating Unused Amplifier with Single Power Supply VIDEO RECONSTRUCTION FILTER A common application for active filters is at the output of video digital-to-analog converters (DACs)/encoders. The filter, or more appropriately, the video reconstruction filter, is used at the output of a video DAC/encoder to eliminate the multiple images that are created during the sampling process within the DAC. For portable video applications, the ADA4891 is an ideal choice due to its lower power requirements and high performance. For active filters, a good rule of thumb is that the amplifiers −3 dB bandwidth be at least 10 times higher than the corner frequency of the filter. This ensures that no initial roll-off is introduced by the amplifier and that the pass band is flat until the cutoff frequency. R2 47 Ω VIN R3 125 Ω R6 6.8 Ω +5V R7 68.1 Ω R1 C1 51pF C3 15pF C4 1nF R4 1k Ω R5 1k Ω R8 75 Ω VOUT Figure 51. 13 MHz Video Reconstruction Filter Schematic –39 –36 –33 –30 –27 –24 –21 –18 –15 –12 –9 –6 –3 0 0.03 0.1 1 10 100 FREQUENCY (MHz) Figure 52. Video Reconstruction Filter Frequency Performance |
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